van Heeswijk M P, Geertsen J A, van Os C H
J Membr Biol. 1984;79(1):19-31. doi: 10.1007/BF01868523.
Basolateral plasma membranes from rat kidney cortex have been purified 40-fold by a combination of differential centrifugation, centrifugation in a discontinuous sucrose gradient followed by centrifugation in 8% percoll. The ratio of leaky membrane vesicles (L) versus right-side-out (RO) and inside-out (IO) resealed vesicles appeared to be L:RO:IO = 4:3:1. High-affinity Ca2+-ATPase, ATP-dependent Ca2+ transport and Na+/Ca2+ exchange have been studied with special emphasis on the relative transport capacities of the two Ca2+ transport systems. The kinetic parameters of Ca2+-ATPase activity in digitonin-treated membranes are: Km = 0.11 microM Ca2+ and Vmax = 81 +/- 4 nmol Pi/min X mg protein at 37 degrees C. ATP-dependent Ca2+ transport amounts to 4.3 +/- 0.2 and 7.4 +/- 0.3 nmol Ca2+/min X mg protein at 25 and 37 degrees C, respectively, with an affinity for Ca2+ of 0.13 and 0.07 microM at 25 and 37 degrees C. After correction for the percentage of IO-resealed vesicles involved in ATP-dependent Ca2+ transport, a stoichiometry of 0.7 mol Ca2+ transported per mol ATP is found for the Ca2+-ATPase. In the presence of 75 mM Na+ in the incubation medium ATP-dependent Ca2+ uptake is inhibited 22%. When Na+ is present at 5 mM an extra Ca2+ accumulation is observed which amounts to 15% of the ATP-dependent Ca2+ transport rate. This extra Ca2+ accumulation induced by low Na+ is fully inhibited by preincubation of the vesicles with 1 mM ouabain, which indicates that (Na+-K+)-ATPase generates a Na+ gradient favorable for Ca2+ accumulation via the Na+/Ca2+ exchanger. In the absence of ATP, a Na+ gradient-dependent Ca2+ uptake is measured which rate amounts to 5% of the ATP-dependent Ca2+ transport capacity. The Na+ gradient-dependent Ca2+ uptake is abolished by the ionophore monensin but not influenced by the presence of valinomycin. The affinity of the Na+/Ca2+ exchange system for Ca2+ is between 0.1 and 0.2 microM Ca2+, in the presence as well as in the absence of ATP. This affinity is surprisingly close to the affinity measured for the ATP-dependent Ca2+ pump. Based on these observations it is concluded that in isolated basolateral membranes from rat kidney cortex the Ca2+-ATPase system exceeds the capacity of the Na+/Ca2+ exchanger four- to fivefold and it is therefore unlikely that the latter system plays a primary role in the Ca2+ homeostasis of rat kidney cortex cells.
通过差速离心、在不连续蔗糖梯度中离心,随后在8% Percoll中离心的组合方法,大鼠肾皮质的基底外侧质膜已被纯化40倍。渗漏膜囊泡(L)与外翻(RO)和内翻(IO)重封膜囊泡的比例似乎为L:RO:IO = 4:3:1。对高亲和力Ca2+ - ATP酶、ATP依赖性Ca2+转运和Na+/Ca2+交换进行了研究,特别强调了两种Ca2+转运系统的相对转运能力。在洋地黄皂苷处理的膜中,Ca2+ - ATP酶活性的动力学参数为:Km = 0.11 μM Ca2+,在37℃时Vmax = 81±4 nmol Pi/min×mg蛋白质。在25℃和37℃时,ATP依赖性Ca2+转运分别为4.3±0.2和7.4±0.3 nmol Ca2+/min×mg蛋白质,在25℃和37℃时对Ca2+的亲和力分别为0.13和0.07 μM。在对参与ATP依赖性Ca2+转运的IO重封膜囊泡百分比进行校正后,发现Ca2+ - ATP酶的化学计量比为每摩尔ATP转运0.7摩尔Ca2+。在孵育介质中存在75 mM Na+时,ATP依赖性Ca2+摄取受到22%的抑制。当Na+浓度为5 mM时,观察到额外的Ca2+积累,其相当于ATP依赖性Ca2+转运速率的15%。这种由低Na+诱导的额外Ca2+积累被用1 mM哇巴因预孵育囊泡完全抑制,这表明(Na+ - K+)- ATP酶产生了一个有利于通过Na+/Ca2+交换体进行Ca2+积累的Na+梯度。在没有ATP的情况下,测量到一种Na+梯度依赖性Ca2+摄取,其速率相当于ATP依赖性Ca2+转运能力的5%。Na+梯度依赖性Ca2+摄取被离子载体莫能菌素消除,但不受缬氨霉素存在的影响。在有ATP和无ATP的情况下,Na+/Ca2+交换系统对Ca2+的亲和力在0.1至0.2 μM Ca2+之间。这种亲和力惊人地接近对ATP依赖性Ca2+泵测量的亲和力。基于这些观察结果得出结论,在大鼠肾皮质分离的基底外侧膜中,Ca2+ - ATP酶系统的能力超过Na+/Ca2+交换体四到五倍,因此后者系统不太可能在大鼠肾皮质细胞的Ca2+稳态中起主要作用。